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A new method for analysis and design of iterative learning control algorithms in the time-domain

机译:时域迭代学习控制算法分析与设计的新方法

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摘要

In this paper, a novel analysis method for iterative learning control (ILC) algorithms is presented. Even though expressed in the lifted system representation and hence in the time-domain, the convergence rate as a function of the frequency content of the error signal can be determined. Subsequently, based on the analysis method, a novel ILC algorithm (F-ILC) is proposed. The convergence rate at specific frequencies can be set directly in the design process, which allows simple tuning and a priori known convergence rates. Using the F-ILC design, it is shown how to predict the required number of iterations until convergence is achieved, depending on the reference trajectory and information on the system repeatability. Numerical examples are given and experimental results obtained on an internal combustion engine test bench are shown for validation.
机译:本文提出了一种新的迭代学习控制(ILC)算法分析方法。即使以提升的系统表示形式并因此以时域表示,收敛速度也可以作为误差信号的频率含量的函数来确定。随后,基于分析方法,提出了一种新的ILC算法(F-ILC)。可以在设计过程中直接设置特定频率下的收敛速度,这允许简单的调整和事先已知的收敛速度。使用F-ILC设计,显示了如何根据参考轨迹和系统可重复性信息,预测达到收敛之前所需的迭代次数。给出了数值示例,并示出了在内燃机测试台上获得的实验结果以进行验证。

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